4.5 Article

Development of a see-through hollow cathode discharge lamp for (Li/Ne) optogalvanic studies

Journal

REVIEW OF SCIENTIFIC INSTRUMENTS
Volume 88, Issue 9, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.5000853

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Development of a demountable and see-through hollow cathode (HC) discharge lamp suitable for optogalvanic (OG) spectroscopy is described. The design of the HC lamp is simple, compact, and inexpensive. Lithium, investigated rarely by the OG method, is selected for cathode material as its isotopes are important for nuclear industry. The HC lamp is characterized electrically and optically for discharge oscillations free OG effect. Strong OG signals of lithium as well as neon (as buffer gas) are produced precisely upon copper vapor laser pumped tunable dye laser irradiation. The HC lamp is capable of generating a clean OG resonance spectrum in the available dye laser wavelength scanning range (627.5-676 nm) obtained with 4-(Dicyanomethylene)-2-methyl-6-(4-dimethylaminostyryl)-4Hpyran dye. About 28 resonant OG lines are explicitly observed. Majority of them have been identified using j-l coupling scheme and assigned to the well-known neon transitions. One line that corresponds to wavelength near about 670.80 nm is assigned to lithium and resolved for its fine (S-2(1/2) -> P-2(1/2), (3/2)) transitions. These OG transitions allow 0.33 cm(-1) accuracy and can be used to supplement the OG transition data available from other sources to calibrate the wavelength of a scanning dye laser with precision at atomic levels. Published by AIP Publishing.

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